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Design of novel electron-rich organometallic frameworks involving metal-isocyanide junctions.

机译:涉及金属-异氰化物结的新型富电子有机金属骨架的设计。

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摘要

Aromatic diisocyanides are extensively employed as building blocks in coordination and surface chemistry as charge transport mediators for nanotechnology applications. The first diisocyanoarene-bridged bimetallate system, [{(CO) 5V}2(mu-CNC6Me4NC)]2-, was synthesized from V(CO)6 through a neutral [(CO)5V] 2(mu-CNC6Me4NC) intermediate, or, less conveniently, directly from subvalent [V(CO)6]-. In the solid state, the bimetallic dianions [{(CO)5V}2(mu-CNC 6Me4NC)]2- undergo regular pi-stacking aggregation and exhibit strong contact ion association with cobaltocenium counter-ions. This results in an unusual electron-rich polymeric supramolecular ensemble held together exclusively via non-covalent interactions. The chemistry of a second vanadium(-I) bimetallate featuring the 1,1'-diisocyanoferrocene bridge is described as well.;Synthesis of 2,2'-diisocyano-1,1',3,3'-tetraethoxycarbonyl-6,6'-biazulene involving Pd-catalyzed coupling of monoazulenic precursors was developed. The single crystal X-ray analysis of this nearly 2 nm-long linear ditopic diisocyanobiazulene linker revealed an interplanar angle of 67° between the two azulene rings. The two-electron reduction of this diisocyanobiazulene is perfectly reversible, at least on the electrochemical scale, and occurs in a single step at an unusually mild potential of ca. 1.0 V vs. ferrocene/ferrocenium couple. Generation of a closed-shell biazulenic dianion accompanied by a substantial decrease in the interplanar angle between the two azulenic halves of this novel ligand is strongly suggested. Mono- and bimetallic complexation of the 2,2'-diisocyano-6,6'-biazulene allowed assessment of the change in the metal-to-diisocyanobiazulene charge transfer energy upon binucleation of the linker by electronic spectroscopy. In addition, efficient regioselective mono-isocyanide functionalization of the perfectly planar, symmetric 2,2'-biazulene and initial organometallic chemistry of the resulting long nonbenzenoid aryl isocyanide is described.;The first examples of biazulenic self-assembled monolayers (SAMs) on a metal surface were prepared and characterized by FTIR and ellipsometric techniques. The organic substrates feature symmetric linear 2,2'- or 6,6'-biazulenic motif functionalized with one or two isocyanide "alligator clips". In all cases, terminal upright eta1 coordination to gold is realized. The gold-isocyanide junction in these biazulenic films appears to be much less prone to gold-assisted oxidation of isocyanide to isocyanate under ambient conditions compared to SAMs of many benzenoid aryl isocyanides on Au(111). The kinetic stability of adsorbed benzenoid aryl isocyanides on gold can be substantially improved by linking several coordinated isocyanoarene moieties together. This is demonstrated by the adsorption of 8,16,24,32-tetraisocyano[2.2.2.2]metacyclophane on the gold(111) surface via all four of its isocyanide groups to form an air-stable SAM that features approximately upright orientation of the aryl isocyanide units with respect to the surfaces as evidenced by FTIR and optical ellipsometry measurements. The energetic gain upon chemisorption of the tetraisocyanide to the gold surface in the mu4-eta1: eta 1: eta1: eta1 fashion substantially outweighs the cost of the metacyclophane conformational change required for such coordination. Thus, the isocyanide groups function as effective two-atom long anchors for self-assembling stable monolayers of cyclophanes on metallic gold and the strategy developed herein should be of general utility.
机译:芳香族二异氰化物被广泛用作配位和表面化学的基石,作为纳米技术应用中的电荷传输介质。第一个二异氰基芳烃桥联的双金属酸盐系统[{((CO)5V} 2(mu-CNC6Me4NC)] 2-是通过中性的[(CO)5V] 2(mu-CNC6Me4NC)中间体由V(CO)6合成的,或者,较不方便的是直接来自亚价[V(CO)6]-。在固态状态下,双金属二价阴离子[{((CO)5V} 2(mu-CNC 6Me4NC)] 2-经历规则的pi堆积聚集,并显示出与钴ce抗衡离子的强接触离子缔合。这导致异常的富含电子的聚合物超分子整体仅通过非共价相互作用而结合在一起。还描述了以1,1'-二异氰基二茂铁桥键为代表的第二金属钒(-I)双金属盐的化学性质;; 2,2'-二异氰基-1,1',3,3'-四乙氧基羰基-6,6的合成开发了涉及Pd催化的单氮杂腈前体的'-双氮烯。对这个接近2纳米长的线性二位二异氰基双氮杂戊腈连接体的单晶X射线分析表明,两个a环之间的平面角为67°。至少在电化学规模上,这种二异氰基双氮杂烯的双电子还原是完全可逆的,并且在一步中以约200的异常温和电势发生。 1.0 V对二茂铁/二茂铁ro。强烈建议生成闭壳双氮杂二价阴离子,并伴随这种新配体的两个氮青烯半分子之间的晶面角显着降低。 2,2'-二异氰基-6,6'-二氮杂烯的单金属和双金属络合可以通过电子光谱法评估连接子双核化后金属-二异氰基二氮杂烯电荷转移能量的变化。此外,还描述了完美平面,对称的2,2'-二氮杂烯的高效区域选择性单异氰酸酯官能化以及所得长非苯甲酰芳基异氰酸酯的初始有机金属化学性质。制备金属表面并通过FTIR和椭偏技术进行表征。有机底物的特征是对称线性的2,2'-或6,6'-双氮烯基序基团被一个或两个异氰酸酯“配位夹”官能化。在所有情况下,都实现了与黄金的最终立式eta1协调。与在Au(111)上的许多苯环类芳基异氰酸酯的SAM相比,在环境条件下,这些双氮杂膜中的金-异氰化物结似乎不易金辅助氧化为异氰酸酯成异氰酸酯。通过将几个配位的异氰基芳烃部分连接在一起,可以大大提高金上吸附的苯并芳基异氰酸酯的动力学稳定性。这可以通过在其金(111)表面上的所有四个异氰酸酯基团吸附8、16、24、32-四异氰基[2.2.2.2]甲基环已烷来形成空气稳定的SAM,该SAM具有近似直立的取向,从而证明了这一点。 FTIR和椭偏光度法测量表明,相对于表面的芳基异氰化物单元。在mu4-eta1:eta1:eta1:eta1方式下将四异氰化物化学吸附到金表面上时获得的能量增益大大超过了进行这种配位所需的metacyclophane构象变化的成本。因此,异氰酸酯基团起有效的两原子长的锚定作用,用于金属金上环烷的自组装稳定单分子层的自组装,本文开发的策略应具有普遍用途。

著录项

  • 作者

    Maher, Tiffany Rene.;

  • 作者单位

    University of Kansas.;

  • 授予单位 University of Kansas.;
  • 学科 Chemistry Inorganic.;Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 255 p.
  • 总页数 255
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无机化学;有机化学;
  • 关键词

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